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Physical, mechanical and durability properties of GFRP bars with modified acrylic resin (modar) matrix

机译:GFRP棒与改性丙烯酸树脂(MODAR)基质的物理,机械和耐久性特性

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摘要

Glass fiber reinforced polymer (GFRP) bars are currently used as internal reinforcement of concrete structures, as an alternative to traditional steel rebars, to avoid corrosion problems and durability issues.GFRP bars are usually made of continuous glass filaments embedded within a polyester (for non-structural applications) or vinyl ester resin. These resins have been used for many years in several technological fields and widely employed as matrices for composite materials with structural functions. However, since the matrix plays a fundamental role in protecting the fibers from the external environment, the development of new organic matrices able to withstand aggressive environmental conditions while keeping a low cost of production is certainly of great interest.In this study, the possibility of using a modified acrylic resin (ModAR), never employed for such applications, as matrix for GFRP bars has been investigated. Physical, mechanical and durability tests have been carried out, according to international standards, to evaluate the technical feasibility of using ModAR matrices. Experimental results showed that ModAR GFRP bars are able to offer high thermal resistance while keeping physical and mechanical properties within standard limits.
机译:目前使用玻璃纤维增​​强聚合物(GFRP)棒作为混凝土结构的内部加固,作为传统钢筋的替代品,以避免腐蚀问题和耐用性问题。GFRP棒通常由嵌入聚酯内的连续玻璃长丝制成(用于非 - 结构应用)或乙烯基酯树脂。这些树脂已在几个技术领域中使用多年,并且广泛使用作为具有结构功能的复合材料的基质。然而,由于基质在保护纤维免受外部环境中起着基本作用,因此能够承受侵袭性环境条件的新有机基质的发展,同时保持低成本的生产率肯定是非常感兴趣的。在这项研究中,在这项研究中,可能的可能性使用改性的丙烯酸树脂(MODAR),从未用于这种应用,作为GFRP棒的基质已经研究过。根据国际标准,已经进行了物理,机械和耐用性测试,以评估使用Modar矩阵的技术可行性。实验结果表明,模型GFRP棒能够提供高热阻,同时保持标准限制内的物理和机械性能。

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